High Efficiency Amorphous Triple-Junction Thin-Film SiGe Solar Cells Incorporating Multi-Trench Region

被引:0
|
作者
Ferhati, H. [1 ]
Djeffal, F. [1 ]
Kacha, K. [1 ]
Arar, D. [2 ]
机构
[1] Univ Batna, LEA, Dept Elect, Batna 05000, Algeria
[2] Univ Batna, Dept Elect, Batna 05000, Algeria
关键词
amorphous; SiGe; multi-trench; fill factor; electrical efficiency;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents a new amorphous triple-junction thin-film SiGe solar cell design enhancing the power efficiency for high performance photovoltaic applications. To do that, a new approach based on multi-trench technique to improve the electrical performance, which are the electrical efficiency and fill factor, is presented and discussed. The key idea behind this contribution is to introduce new multi-trench region in the intrinsic layer of the top sub-cell, in order to modulate the electrical behavior, total resistance, of the triple-junction solar cell. The numerical calculations demonstrate that, according to the trench size effects on both series resistance and shunt resistance, the fill factor and electrical efficiency values are strongly related to the number and structure of the trenches. To justify the validity of our design suitable for implementation in photovoltaic system and solar cell simulators, the obtained results are compared with the available research data and they shows a satisfactory improvement, consequently, demonstrating the efficiency of our design.
引用
收藏
页码:274 / 277
页数:4
相关论文
共 50 条
  • [42] Spectral matching and outdoor solar to electrical conversion efficiency in thin-film silicon multi-junction solar cells
    Reynolds, S.
    Urbain, F.
    Smirnov, V.
    19TH INTERNATIONAL SCHOOL ON CONDENSED MATTER PHYSICS (ISCMP): ADVANCES IN NANOSTRUCTURED CONDENSED MATTER: RESEARCH AND INNOVATIONS, 2017, 794
  • [43] Increasing the Efficiency of Triple-Junction Solar Cells Due to the Metamorphic InGaAs Subcell
    M. A. Mintairov
    V. V. Evstropov
    S. A. Mintairov
    M. V. Nakhimovich
    R. A. Saliy
    M. Z. Shvarts
    N. A. Kalyuzhniy
    Technical Physics Letters, 2023, 49 : S81 - S84
  • [44] Response to simulated typical daily outdoor irradiation conditions of thin-film silicon-based triple-band-gap, triple-junction solar cells
    Krishnan, P.
    Schuttauf, J. W. A.
    van der Werf, C. H. M.
    Hassanzadeh, B. Houshyani
    van Sark, W. G. J. H. M.
    Schropp, R. E. I.
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2009, 93 (6-7) : 691 - 697
  • [45] Increasing the Efficiency of Triple-Junction Solar Cells Due to the Metamorphic InGaAs Subcell
    Mintairov, M. A.
    Evstropov, V. V.
    Mintairov, S. A.
    Nakhimovich, M. V.
    Saliy, R. A.
    Shvarts, M. Z.
    Kalyuzhniy, N. A.
    TECHNICAL PHYSICS LETTERS, 2023, 49 (SUPPL 2) : S81 - S84
  • [46] Numerical simulation of a triple-junction thin-film solar cell based on μc-Si1-xGex :H
    黄振华
    张建军
    倪牮
    曹宇
    胡子阳
    李超
    耿新华
    赵颖
    Chinese Physics B, 2013, 22 (09) : 684 - 689
  • [47] Research on the Scattering Spectrum of GaAs-Based Triple-Junction Solar Cell Based on Thin-Film Interference Theory
    Li Peng
    Li Zhi
    Xu Can
    Fang Yu-qiang
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2020, 40 (10) : 3092 - 3097
  • [48] High-Efficiency Triple-Junction Polymer Solar Cell: A Theoretical Approach
    Sattar, Fazli
    Zhou, Xiaozhuang
    Ullah, Zakir
    MOLECULES, 2024, 29 (22):
  • [49] High-efficiency GaInP/GaAs/InGaAs triple-junction solar cells grown inverted with a metamorphic bottom junction
    Geisz, J. F.
    Kurtz, Sarah
    Wanlass, M. W.
    Ward, J. S.
    Duda, A.
    Friedman, D. J.
    Olson, J. M.
    McMahon, W. E.
    Moriarty, T. E.
    Kiehl, J. T.
    APPLIED PHYSICS LETTERS, 2007, 91 (02)
  • [50] Temperature characteristics of high efficiency InGaP/InGaAs/Ge triple-junction solar cells under concentration
    Nishioka, K
    Takamoto, T
    Agui, T
    Kaneiwa, M
    Uraoka, Y
    Fuyuki, T
    CONFERENCE RECORD OF THE TWENTY-NINTH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE 2002, 2002, : 955 - 958